TS EAMCET · Physics · Magnetic Properties of Matter
The magnetic induction and the intensity of magnetic field inside an iron core of an electromagnet are \(1 \mathrm{~Wb} \mathrm{~m}^{-2}\) and \(150 \mathrm{Am}^{-1}\), respectively. The relative permeability of iron is \(\left(\mu_0=4 \pi \times 10^{-7}\right.\) henry \(\left./ \mathrm{m}\right)\)
- A \(\frac{10^6}{4 \pi}\)
- B \(\frac{10^6}{6 \pi}\)
- C \(\frac{10^5}{4 \pi}\)
- D \(\frac{10^5}{6 \pi}\)
Answer & Solution
Correct Answer
(D) \(\frac{10^5}{6 \pi}\)
Step-by-step Solution
Detailed explanation
We know \(B=\mu H=\mu_n \mu_0 H\) Where \(\mu_r\) is relative permeability \(=\frac{\mu}{\mu_0}\) \(\begin{aligned} \therefore \quad \mu_r & =\frac{B}{\mu_0 H} \\ & =\frac{1}{\left(4 \pi \times 10^{-7}\right)(150)}=\frac{10^5}{6 \pi} \end{aligned}\)
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